000806756 000__ 03184cam\a2200517Mi\4500 000806756 001__ 806756 000806756 005__ 20230306143834.0 000806756 006__ m\\\\\o\\d\\\\\\\\ 000806756 007__ cr\un\nnnunnun 000806756 008__ 170207s2017\\\\sz\\\\\\ob\\\\001\0\eng\d 000806756 019__ $$a971245973$$a971914152$$a972138699$$a972263395$$a972426916$$a981850265$$a1005793146$$a1011959822 000806756 020__ $$a9783319507873$$q(electronic book) 000806756 020__ $$a3319507877$$q(electronic book) 000806756 020__ $$z9783319507866 000806756 020__ $$z3319507869 000806756 0247_ $$a10.1007/978-3-319-50787-3$$2doi 000806756 035__ $$aSP(OCoLC)ocn971594201 000806756 035__ $$aSP(OCoLC)971594201$$z(OCoLC)971245973$$z(OCoLC)971914152$$z(OCoLC)972138699$$z(OCoLC)972263395$$z(OCoLC)972426916$$z(OCoLC)981850265$$z(OCoLC)1005793146$$z(OCoLC)1011959822 000806756 040__ $$aYDX$$beng$$epn$$cYDX$$dN$T$$dEBLCP$$dGW5XE$$dN$T$$dOCLCQ$$dIDEBK$$dOCLCF$$dNJR$$dCCO$$dMERUC$$dCOO$$dAZU$$dUWO$$dUPM$$dZ5A$$dOCLCQ$$dVT2$$dIDB$$dUAB 000806756 049__ $$aISEA 000806756 050_4 $$aQC327 000806756 08204 $$a536/.25$$223 000806756 1001_ $$aDixon, John M. 000806756 24510 $$aMixed convection in fluid superposed porous layers /$$cJohn M. Dixon, Francis A. Kulacki. 000806756 260__ $$aCham :$$bSpringer,$$c2017. 000806756 300__ $$a1 online resource. 000806756 336__ $$atext$$btxt$$2rdacontent 000806756 337__ $$acomputer$$bc$$2rdamedia 000806756 338__ $$aonline resource$$bcr$$2rdacarrier 000806756 347__ $$atext file$$bPDF$$2rda 000806756 4901_ $$aSpringerBriefs in applied sciences and technology,$$x2191-530X 000806756 504__ $$aIncludes bibliographical references and index. 000806756 5050_ $$aIntroduction -- Mathematical Formulation and Numerical Methods -- Numerical Results -- Measurement of Heat Transfer Coefficients -- Summary of Findings -- References -- Appendices. 000806756 506__ $$aAccess limited to authorized users. 000806756 520__ $$aThis Brief describes and analyzes flow and heat transport over a liquid-saturated porous bed. The porous bed is saturated by a liquid layer and heating takes place from a section of the bottom. The effect on flow patterns of heating from the bottom is shown by calculation, and when the heating is sufficiently strong, the flow is affected through the porous and upper liquid layers. Measurements of the heat transfer rate from the heated section confirm calculations. General heat transfer laws are developed for varying porous bed depths for applications to process industry needs, environmental sciences, and materials processing. Addressing a topic of considerable interest to the research community, the brief features an up-to-date literature review of mixed convection energy transport in fluid superposed porous layers. 000806756 588__ $$aDescription based on print version record. 000806756 650_0 $$aHeat$$xConvection. 000806756 650_0 $$aHeat$$xTransmission. 000806756 650_0 $$aPorous materials$$xThermal properties. 000806756 7001_ $$aKulacki, F. A. 000806756 77608 $$iPrint version:$$aDixon, John M.$$tMixed convection in fluid superposed porous layers.$$dCham : Springer, 2017$$z3319507869$$z9783319507866$$w(OCoLC)962895637 000806756 830_0 $$aSpringerBriefs in applied sciences and technology. 000806756 852__ $$bebk 000806756 85640 $$3SpringerLink$$uhttps://univsouthin.idm.oclc.org/login?url=http://link.springer.com/10.1007/978-3-319-50787-3$$zOnline Access$$91397441.1 000806756 909CO $$ooai:library.usi.edu:806756$$pGLOBAL_SET 000806756 980__ $$aEBOOK 000806756 980__ $$aBIB 000806756 982__ $$aEbook 000806756 983__ $$aOnline 000806756 994__ $$a92$$bISE